Explore expert resources and technical insights

Technical Library

Filter by Method

Chemisorption Analysis: Adsorbate Selection Guide

Learn how to select the right adsorbate, conditions, and stoichiometry for chemisorption analysis of supported metal catalysts, with IR-based speciation data.

Chemisorption Analysis: Adsorbate Selection Guide

Steady-State Isotopic Transient Kinetic Analysis in Practice: Instrumentation, Computation, and FTIR Integration

A guide to steady-state isotopic transient kinetic analysis: instrumentation, kinetic parameters, curve modeling, and FTIR integration on the AMI-300 SSITKA.

Steady State Isotopic Transient Kinetic Analysis Guide

Nickel Catalyst Characterization: Building a QC Procedure That Actually Catches Problems

Learn how hydrogen TPD and pulse chemisorption build a reliable QC procedure for supported nickel catalysts.

Nickel Catalyst QC TPD Methods That Catch Failures Early

Temperature Programmed Desorption: Measuring Metal Surface Area and Crystallite Size in Supported Catalysts

Learn how TPD measures metal surface area and crystallite size in supported catalysts, with complete calculation examples for Ni, Pt, and Rh.

Temperature Programmed Desorption for Metal Surface Area

Volumetric Chemisorption for Metal Crystallite Size

know how volumetric chemisorption measures metal crystallite size using P-V-T equilibrium and established factors for Ni and Pt catalysts.

Volumetric Chemisorption for Metal Crystallite Size

Dynamic Chemisorption vs Volumetric Chemisorption: A Direct Comparison for Catalyst Characterization

Compare dynamic chemisorption and volumetric methods for Pt and Co catalysts. See CO and H2 uptake data proving both yield consistent, reliable results.

Dynamic Chemisorption vs Volumetric Which Method Wins

Pulse Chemisorption: Measuring Metal Dispersion and Surface Area in Supported Catalysts

Learn how pulse chemisorption measures metal dispersion and surface area in supported catalysts, with advantages, limitations, and real published results.

Pulse Chemisorption for Metal Dispersion & Surface Area

Catalyst Characterization: Pore Structure to Active Sites

Learn how N2 physisorption, TPR, and TPO deliver complete heterogeneous catalyst characterization data across zeolite, alumina, and metal oxide systems.

Catalyst Characterization: Pore Structure to Active Sites